| Literature DB >> 34336191 |
Charlie F Dixon1, Ana N Nottingham2, Ana Frances Lozano1, J Alexander Sizemore2, Logan A Russell2, Chelsea Valiton1, Kimberly L Newell1, Dominique Babin2, William T Bridges1, Matthew R Parris1, David V Shchirov1, Nicole L Snyder2, Joshua V Ruppel1.
Abstract
Porphyrins have served as common photosensitizing agents in photomedicine due to their unique properties and broad therapeutic potential. While photodynamic therapy (PDT) offers a promising avenue for novel drug development, limitations in application due to selectivity, and the inherent hydrophobicity and poor solubility of porphyrins and other organic photosensitizers has been noted. Porphyrin glycoconjugates have recently gained attention for their potential to overcome these limitations. However, little has been done to explore the effects of the linker between the carbohydrate and porphyrin analog. Here we report the synthesis of over 30 new carbohydrate-porphyrin conjugates which vary in the nature of the sugar (Gal, Glc, GalNAc, GlcNAc, Lac and Tre) and the distance between the porphyrin macrocycle and the carbohydrate. Porphyrin glycoconjugates were synthesized in three steps from a readily available meso-brominated diphenylporphyrin analog by (i) C-O coupling of an appropriate TMS-protected alkynol consisting of two to six carbon spacers (ii) removal of the TMS protecting group, and (iii) CuAAC conjugation with an appropriate glycosyl azide. First studies with trehalose-based glycoporphyrins and M. smeg were used to determine the effects of the linker in photodynamic inactivation (PDI) studies. Preliminary results demonstrated an increase in photodynamic inactivation with a decrease in linker length. Investigations are underway to determine the mechanism for these results.Entities:
Year: 2021 PMID: 34336191 PMCID: PMC8320722 DOI: 10.1039/d0ra10793j
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Pd-catalyzed C–O cross-coupling of 1 with a series of protected alkynylated alcohols (2a–2e).
Scheme 2Glycoconjugation of a series of alkynylated DPP derivatives via copper-promoted azide–alkyne 1,3-dipolar cycloaddition (CuAAC).Reactions were carried out at 50 °C for 48 h under N2 in DMF with 10 mol% of CuI and 100 eq. of DIPEA. Reaction carried out with 10 mol% of CuSO4·5H2O and 50 mol% of ascorbic acid. Average of 2 trials.
Fig. 1Trehalose diphenylporphyrin glycoconjugates used in preliminary cell viability studies.
Fig. 2(A) Qualitative visual indicator of relative cell viability of compounds 16a, 16e, and 17 at 10 μM, performed in triplicate. (B) Cell viability of compounds 16a, 16e, and 17 against M. smeg relative to control.
Fig. 3Cell viability of compounds 16b–d at 20 μM against M. smeg relative to control.